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Home >> Ford >> 2017 >> Expedition EL SSV, RWD >> Repair and Diagnosis (Single Page) >> Heating, Ventilation & A/C (HVAC) >> HVAC Control Systems >> Climate Control System - General Information And Diagnostics >> Description And Operation >> Climate Control System >> Climate Control System - Vehicles With: Electronic Manual Temperature Control (EMTC) - System Operation and Component Description >> System Operation >> The Refrigerant Cycle
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The Refrigerant Cycle

For information regarding base refrigerant operation within the HVAC system, refer to the current Ford Web Based Technical Training courses. The diagram below shows the refrigerant system state in each component on this vehicle.

The following statements apply to this refrigerant system:

TXV Type Refrigerant System State and Flow 

GFD136638Courtesy of FORD MOTOR COMPANY
Item Description
1 Evaporator core
2 Auxiliary evaporator core
3 Auxiliary TXV
4 A/C evaporator core outlet temperature thermistor
5 TXV
6 A/C charge valve port (low side)
7 Manifold and tube assembly - A/C compressor
8 A/C compressor
9 A/C pressure relief valve
10 A/C pressure transducer
11 Low-pressure vapor
12 High-pressure vapor
13 Low-pressure liquid
14 High-pressure liquid
15 Desiccant bag
16 Condenser core
17 Manifold and tube assembly - condenser
18 A/C charge valve port (high side)

Compressor Anti-Slugging Strategy (CASS) 

Liquid refrigerant may accumulate in the A/C compressor under certain conditions. To reduce damage to the A/C compressor, CASS is utilized.

CASS is initiated only under specific conditions:

When these conditions are present, the PCM activates the A/C control relay prior to cranking of the engine. The A/C control relay engages the A/C compressor for approximately 4-15 A/C compressor revolutions or a maximum of 2 seconds (depending upon vehicle application), allowing the liquid refrigerant to be pushed from the A/C compressor. CASS is initiated by the PCM regardless of the HVAC system settings.